442
Views
38
CrossRef citations to date
0
Altmetric
Original Articles

Magnetic effervescent tablet-assisted ionic liquid dispersive liquid–liquid microextraction of selenium for speciation in foods and beverages

, , , , , & show all
Pages 1190-1199 | Received 22 Feb 2016, Accepted 08 May 2016, Published online: 03 Jun 2016

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Huili Wang, Min Xia, Yuhang Ling, Feiyue Qian, Jiaqi Xu, Zhenfeng Wang, Jieyi Li & Xuedong Wang. (2019) Switchable hydrophilicity solvent based and solidification-assisted liquid-phase microextraction combined with GFAAS for quantification of trace soluble lead in raw bovine and derivative milk products. Food Additives & Contaminants: Part A 36:11, pages 1654-1666.
Read now
Zahra Dehghani Firouzabadi, Shayessteh Dadfarnia, Ali Mohammad Haji Shabani, Mohammad Hassan Ehrampoush & Elaheh Nourbala Tafti. (2018) Magnetic dispersive solid phase extraction using modified magnetic multi-walled carbon nanotubes combined with electrothermal atomic absorption spectrometry for the determination of selenium. International Journal of Environmental Analytical Chemistry 98:6, pages 555-569.
Read now

Articles from other publishers (34)

Hakim Faraji. (2024) Advancements in overcoming challenges in dispersive liquid-liquid microextraction: An overview of advanced strategies. TrAC Trends in Analytical Chemistry 170, pages 117429.
Crossref
María B. Botella, María N. Oviedo, Pablo Pacheco & Rodolfo G. Wuilloud. (2024) Highly efficient natural deep eutectic solvent-based liquid-liquid microextraction and inductively coupled plasma mass spectrometry for selective determination of inorganic selenium species in nut samples. Spectrochimica Acta Part B: Atomic Spectroscopy 211, pages 106832.
Crossref
Yaoyao Qiao, Jinbao Qiao, Jinling Cao, Feier Cheng, Yanfen Cheng, Mingchang Chang, Junlong Meng, Jingyu Liu, Shaojun Yun & Cuiping Feng. (2023) Magnetic effervescence-assisted switchable solvent dispersive liquid-liquid microextraction for the determination of pyrethroids in edible fungi. Journal of Food Composition and Analysis 122, pages 105473.
Crossref
Hanzhang YE, Tingting LIU, Yongli DING, Jingjing GU, Yuhao LI, Qi WANG, Zhan’en ZHANG & Xuedong WANG. (2023) Recent advances in the development and application of effervescence-assisted microextraction techniques. Chinese Journal of Chromatography 41:4, pages 289-301.
Crossref
Haijuan Jiang, Shaoxiang Yang, Hongyu Tian & Baoguo Sun. (2023) Research progress in the use of liquid-liquid extraction for food flavour analysis. Trends in Food Science & Technology 132, pages 138-149.
Crossref
Ingrid Hagarová & Lucia Nemček. (2022) Reliable Quantification of Ultratrace Selenium in Food, Beverages, and Water Samples by Cloud Point Extraction and Spectrometric Analysis. Nutrients 14:17, pages 3530.
Crossref
Siyu Luo, Xiaochong Song, Jinghe Peng & Xiaojia Huang. (2022) Efficient entrapment of inorganic Se species in water and beer samples with functional groups‐rich monolith‐based adsorbent. Journal of Separation Science 45:9, pages 1560-1569.
Crossref
Juan Liu & Feifei Li. 2022. Encyclopedia of Ionic Liquids. Encyclopedia of Ionic Liquids 610 616 .
Iwona Rykowska, Iwona Nowak & Wiesław Wasiak. 2022. Handbook of Bioanalytics. Handbook of Bioanalytics 957 973 .
Iwona Rykowska, Iwona Nowak & Wiesław Wasiak. 2020. Handbook of Bioanalytics. Handbook of Bioanalytics 1 17 .
Xiaofang Yang, Caixia Yan, Yiping Sun, Yong Liu, Shengchun Yang, Qingwen Deng & Xiaodong Wen. (2021) Micro-spectrophotometric determination of nickel in Gentiana rigescens after switchable hydrophilicity solvent-based ultrasound-assisted liquid phase microextraction. Microchemical Journal 168, pages 106402.
Crossref
Nail Altunay, Adil Elik & Konstantin Katin. (2021) Optimization of vortex-assisted ionic liquid dispersive liquid–liquid microextraction by experimental design prior to hydride generation atomic absorption spectrometry for determination of selenium species in food, beverage and water samples. Journal of Food Composition and Analysis 99, pages 103871.
Crossref
Ewa Stanisz & Magdalena Krawczyk-Coda. 2021. Analytical Methods in the Determination of Bioactive Compounds and Elements in Food. Analytical Methods in the Determination of Bioactive Compounds and Elements in Food 309 344 .
Guillermo Lasarte-Aragonés, Rafael Lucena & Soledad Cárdenas. (2020) Effervescence-Assisted Microextraction—One Decade of Developments. Molecules 25:24, pages 6053.
Crossref
Wenfei Zhao, Xu Jing, Yaqin Tian & Cuiping Feng. (2020) Magnetic Fe3O4 @ porous activated carbon effervescent tablet-assisted deep eutectic solvent-based dispersive liquid–liquid microextraction of phenolic endocrine disrupting chemicals in environmental water. Microchemical Journal 159, pages 105416.
Crossref
María J. Trujillo‐Rodríguez, Verónica Pino & Manuel Miró. (2020) High‐throughput microscale extraction using ionic liquids and derivatives: A review. Journal of Separation Science 43:9-10, pages 1890-1907.
Crossref
Sergio L.C. Ferreira, Joao B. Pereira Junior, Lucas C. Almeida, Luana B. Santos, Valfredo A. Lemos, Cleber G. Novaes, Olivia M.C. de Oliveira & Antonio F.S. Queiroz. (2020) Strategies for inorganic speciation analysis employing spectrometric techniques–Review. Microchemical Journal 153, pages 104402.
Crossref
Chanbasha Basheer, Muhammad Kamran, Muhammad Ashraf & Hian Kee Lee. (2019) Enhancing liquid-phase microextraction efficiency through chemical reactions. TrAC Trends in Analytical Chemistry 118, pages 426-433.
Crossref
Fangyu Chu, Ming Gao, Huili Wang, Jieyi Li, Zhaoxi Zheng, Xuedong Wang & Zhanen Zhang. (2019) Development of an effervescent reaction-enhanced microextraction method for preconcentration/extraction of trace estrogens in milk using a reduced graphene oxide-assisted ionic liquid-based nanofluid. Analytical Methods 11:28, pages 3608-3618.
Crossref
Peipei Zhou, Rongjie Zheng, Wei Zhang, Wei Liu, Yanyan Li, Huili Wang & Xuedong Wang. (2019) Development of an effervescent tablet microextraction method using NiFe 2 O 4 -based magnetic nanoparticles for preconcentration/extraction of heavy metals prior to ICP-MS analysis of seafood . Journal of Analytical Atomic Spectrometry 34:3, pages 598-606.
Crossref
Miguel Ángel Aguirre, Paola Baile, Lorena Vidal & Antonio Canals. (2019) Metal applications of liquid-phase microextraction. TrAC Trends in Analytical Chemistry 112, pages 241-247.
Crossref
Sara Jamshidi, Mohammad Kazem Rofouei & Gunnar Thorsen. (2019) Using magnetic core-shell nanoparticles coated with an ionic liquid dispersion assisted by effervescence powder for the micro-solid-phase extraction of four beta blockers from human plasma by ultra high performance liquid chromatography with mass spectrom. Journal of Separation Science 42:3, pages 698-705.
Crossref
Niharika Sharma, Shelja Tiwari & Reena Saxena. 2019. Quality Control in the Beverage Industry. Quality Control in the Beverage Industry 123 159 .
Juan Liu & Feifei Li. 2019. Encyclopedia of Ionic Liquids. Encyclopedia of Ionic Liquids 1 7 .
I. Rykowska, J. Ziemblińska & I. Nowak. (2018) Modern approaches in dispersive liquid-liquid microextraction (DLLME) based on ionic liquids: A review. Journal of Molecular Liquids 259, pages 319-339.
Crossref
Kevin D. Clark, Miranda N. Emaus, Marcelino Varona, Ashley N. Bowers & Jared L. Anderson. (2018) Ionic liquids: solvents and sorbents in sample preparation. Journal of Separation Science 41:1, pages 209-235.
Crossref
Andrey Shishov, Ivan Sviridov, Irina Timofeeva, Natalia Chibisova, Leonid Moskvin & Andrey Bulatov. (2017) An effervescence tablet-assisted switchable solvent-based microextraction: On-site preconcentration of steroid hormones in water samples followed by HPLC-UV determination. Journal of Molecular Liquids 247, pages 246-253.
Crossref
Aldahir Alberto Hernández-Hernández, Giaan Arturo Álvarez-Romero, Elizabeth Contreras-López, Karina Aguilar-Arteaga & Araceli Castañeda-Ovando. (2017) Food Analysis by Microextraction Methods Based on the Use of Magnetic Nanoparticles as Supports: Recent Advances. Food Analytical Methods 10:9, pages 2974-2993.
Crossref
Xiaojun Wang, Peng Chen, Liang Cao, Guoliang Xu, Siyu Yang, Ye Fang, Guozhen Wang & Xincheng Hong. (2016) Selenium Speciation in Rice Samples by Magnetic Ionic Liquid-Based Up-and-Down-Shaker-Assisted Dispersive Liquid-Liquid Microextraction Coupled to Graphite Furnace Atomic Absorption Spectrometry. Food Analytical Methods 10:6, pages 1653-1660.
Crossref
Ahmed S. A. Ibrahim, Radwan Al-Farawati, Usama Hawas & Yasser Shaban. (2017) Recent Microextraction Techniques for Determination and Chemical Speciation of Selenium. Open Chemistry 15:1, pages 103-122.
Crossref
Sunil K. Panchal, Stephen Wanyonyi & Lindsay Brown. (2017) Selenium, Vanadium, and Chromium as Micronutrients to Improve Metabolic Syndrome. Current Hypertension Reports 19:3.
Crossref
Robert Clough, Chris F. Harrington, Steve J. Hill, Yolanda Madrid & Julian F. Tyson. (2017) Atomic spectrometry update: review of advances in elemental speciation. Journal of Analytical Atomic Spectrometry 32:7, pages 1239-1282.
Crossref
Saeideh Molaei, Shahram Seidi, Abolfazl Saleh & Vanik Ghoulipour. (2017) Ionic liquid based in situ solvent formation microextraction followed by on-line phase separation coupled with cold vapor-atomic absorption spectrometry for mercury determination in seafood samples. Analytical Methods 9:35, pages 5189-5197.
Crossref
Lu Hu, Huazi Wang, Heng Qian, Chaoran Liu, Runhua Lu, Sanbing Zhang, Wenfeng Zhou, Haixiang Gao & Donghui Xu. (2016) Centrifuge-less dispersive liquid-liquid microextraction base on the solidification of switchable solvent for rapid on-site extraction of four pyrethroid insecticides in water samples. Journal of Chromatography A 1472, pages 1-9.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.